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Reflected light microscopy as a non-invasive identification tool for wooden artefacts.

机译:反射光显微镜作为一种非侵入性的木制文物鉴定工具。

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摘要

Species identification is a crucial step in the study of wooden artefacts, but sampling is frequently impossible. The objective of this study is to evaluate the efficacy of reflected light microscopy, including the use of polarising and narrow-band blue filters, as a non-invasive identification tool. Different surfacing and finishing techniques copying historical manufacturing methods were applied to selected species. The visibility of anatomical features was evaluated on the basis of a four level scale. Two indexes were created: an Identifiable Anatomical Features index (IAF) to evaluate the effect of treatments on the complex of microstructural characters, and a Feature Recognition Index (FRI) to estimate the susceptibility of each anatomical feature towards different treatments. Surfacing affected the visibility of anatomical features to different degrees of severity depending both on the technique used and on the species. The visibility could be partially improved or decreased by the presence of finishes, depending on their transparency. Each anatomical feature showed different susceptibilities towards treatments. Both polarising and narrow-band blue filters considerably increased visibility of several anatomical features. Possibilities to recognise individual character states were encouraging, except when obscured by low transparency finishes. Much diagnostic anatomical information can be obtained by the use of non-invasive, reflected light microscopy, although the step from feature recognition to species identification may still require further analysis.
机译:物种鉴定是研究木制人工制品的关键步骤,但通常无法进行采样。这项研究的目的是评估反射光显微镜的功效,包括使用偏振和窄带蓝色滤光片作为非侵入性识别工具。复制了历史制造方法的不同表面处理和精加工技术被应用于选定的物种。解剖特征的可见性基于四级标度进行评估。创建了两个指数:一个可识别的解剖特征指数(IAF),用于评估治疗对微结构特征复杂性的影响;一个特征识别指数(FRI),用于估计每个解剖特征对不同治疗的敏感性。根据所使用的技术和物种的不同,表面堆焊在不同程度上严重影响了解剖特征的可见性。取决于饰面的透明度,可以通过饰面的存在来部分提高或降低可见度。每种解剖特征对治疗的敏感性不同。偏振滤光片和窄带蓝色滤光片都大大提高了几个解剖特征的可见性。除非个性化效果不佳,否则识别个性状态的可能性令人鼓舞。尽管从特征识别到物种识别的步骤可能仍需要进一步分析,但通过使用非侵入式反射光显微镜可以获取许多诊断性解剖信息。

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